High-Energy Neutrinos from Millisecond Magnetars formed from the Merger of Binary Neutron Stars
arXiv:1707.04263 · doi:10.3847/1538-4357/aa8b6a
Abstract
The merger of a neutron star (NS) binary may result in the formation of a long-lived, or indefinitely stable, millisecond magnetar remnant surrounded by a low-mass ejecta shell. A portion of the magnetar's prodigious rotational energy is deposited behind the ejecta in a pulsar wind nebula, powering luminous optical/X-ray emission for hours to days following the merger. Ions in the pulsar wind may also be accelerated to ultra-high energies, providing a coincident source of high energy cosmic rays and neutrinos. At early times, the cosmic rays experience strong synchrotron losses; however, after a day or so, pion production through photomeson interaction with thermal photons in the nebula comes to dominate, leading to efficient production of high-energy neutrinos. After roughly a week, the density of background photons decreases sufficiently for cosmic rays to escape the source without secondary production. These competing effects result in a neutrino light curve that peaks on a few day timescale near an energy of eV. This signal may be detectable for individual mergers out to 10 (100) Mpc by current (next-generation) neutrino telescopes, providing clear evidence for a long-lived NS remnant, the presence of which may otherwise be challenging to identify from the gravitational waves alone. Under the optimistic assumption that a sizable fraction of NS mergers produce long-lived magnetars, the cumulative cosmological neutrino background is estimated to be for a NS merger rate of , overlapping with IceCube's current sensitivity and within the reach of next-generation neutrino telescopes.
13 pages, 5 figures, accepted for publication in ApJ
References in corpus (21)
- Comprehensive nucleosynthesis analysis for ejecta of compact binary mergers
- Producing ultra-strong magnetic fields in neutron star mergers
- Short Duration Gamma-Ray Bursts with Extended Emission from Proto-Magnetar Spin-Down
- Merger of binary neutron stars to a black hole: Disk mass, short gamma-ray bursts, and quasinormal mode ringing
- X-Ray Flares from Postmerger Millisecond Pulsars
- Rapidly-Evolving and Luminous Transients from Pan-STARRS1
- Kilonova Light Curves from the Disk Wind Outflows of Compact Object Mergers
- All-sky search for time-integrated neutrino emission from astrophysical sources with 7 years of IceCube data
- Upper limits on the rates of binary neutron star and neutron-star--black-hole mergers from Advanced LIGO's first observing run
- Particle acceleration in axisymmetric pulsar current sheets
- Electrodynamics of axisymmetric pulsar magnetosphere with electron-positron discharge: a numerical experiment
- General-Relativistic Large-Eddy Simulations of Binary Neutron Star Mergers
- Gravitational waves from massive magnetars formed in binary neutron star mergers
- Prospects For High Frequency Burst Searches Following Binary Neutron Star Coalescence With Advanced Gravitational Wave Detectors
- Gamma-Ray and Hard X-Ray Emission from Pulsar-Aided Supernovae as a Probe of Particle Acceleration in Embryonic Pulsar Wind Nebulae
- Non-Thermal X-ray Properties of Rotation Powered Pulsars and Their Wind Nebulae
- Radio Constraints on Long-Lived Magnetar Remnants in Short Gamma-Ray Bursts
- The lowest-mass stellar black holes: catastrophic death of neutron stars in gamma-ray bursts
- Broadband modelling of short gamma-ray bursts with energy injection from magnetar spin-down and its implications for radio detectability
- Multimessenger Search for Sources of Gravitational Waves and High-Energy Neutrinos: Results for Initial LIGO-Virgo and IceCube
- High-Energy Neutrino Signatures of Newborn Pulsars In the Local Universe
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- Kilonovae
- The Dynamics of Binary Neutron Star Mergers and of GW170817
- Low-Latency Gravitational Wave Alerts for Multi-Messenger Astronomy During the Second Advanced LIGO and Virgo Observing Run
- IceCube Search for Neutrinos Coincident with Compact Binary Mergers from LIGO-Virgo's First Gravitational-Wave Transient Catalog
- Multi-Messenger Physics with the Pierre Auger Observatory
- Upscattered Cocoon Emission in Short Gamma-ray Bursts as High-energy Gamma-ray Counterparts to Gravitational Waves
- Search for UHE Photons from Gravitational Wave Sources with the Pierre Auger Observatory
- Astrophysical neutrinos: theory
- Signatures of secondary acceleration in neutrino flares